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A hydrogel-based wireless sensor using micromachined variable inductors with folded flex-circuit structures for biomedical applications

机译:基于水凝胶的无线传感器,使用微机械的可变电感器,用于生物医学应用的折叠柔性电路结构

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This paper reports a flexible, inductive wireless sensor that can be combined with a variety of hydrogel materials for biomedical applications. The variable inductor is formed by folding coplanar dual spiral coil with 5–10 mm size that are microfabricated using 50-µm-thick copper-clad polyimide film so that when folded, the two coils are aligned to each other and the mutual inductance depends on the gap between the aligned coils. A hydrogel element is sandwiched by the folded substrate to modulate the gap, or inductance of the device as it swells/deswells depending on the target parameter. The response of a variable inductor to the displacement of the coils is measured to be 0.40 nH/µm. A sensitivity of 113 ppm/μm in wireless frequency measurement is obtained using the passive resonant device that combines the variable inductor with a fixed capacitor. The resonant devices are coupled with a commercial hydrogel wound dressing as well as pH-sensitive poly(vinyl alcohol)-poly(acrylic acid) hydrogel. Wireless monitoring of the swelling of the wound dressing is experimentally demonstrated.
机译:本文报道了一种灵活的电感无线传感器,可与各种用于生物医学应用的水凝胶材料相结合。通过使用50μm厚的铜包覆的聚酰亚胺膜进行5-10mm尺寸的折叠共面双螺旋线圈形成可变电感器,使得当折叠时,两个线圈彼此对齐,并且相互电感取决于对齐线圈之间的间隙。水凝胶元件被折叠的基板夹在树上以调节装置的间隙或电感,因为取决于目标参数。可变电感器对线圈的位移的响应被测量为0.40nh /μm。使用与固定电容器组合的无源谐振装置获得无线频率测量中113ppm /μm的灵敏度。谐振装置与商业水凝胶伤口敷料以及pH敏感的聚(乙烯醇) - 水凝胶偶联。实验证明了伤口敷料肿胀的无线监测。

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